|Publication number||US6328217 B1|
|Application number||US 09/078,031|
|Publication date||Dec 11, 2001|
|Filing date||May 13, 1998|
|Priority date||May 15, 1997|
|Also published as||DE69839841D1, EP0981807A2, EP0981807B1, WO1998052158A2, WO1998052158A3|
|Publication number||078031, 09078031, US 6328217 B1, US 6328217B1, US-B1-6328217, US6328217 B1, US6328217B1|
|Inventors||David Barrington Everett, Stuart James Miller, Anthony David Peacham, Ian Stephen Simmons, Timothy Philip Richards, John Charles Viner|
|Original Assignee||Mondex International Limited|
|Export Citation||BiBTeX, EndNote, RefMan|
|Patent Citations (180), Non-Patent Citations (1), Referenced by (29), Classifications (31), Legal Events (4)|
|External Links: USPTO, USPTO Assignment, Espacenet|
This application claims the priority of United States Provisional Application No. 60/046,514, filed on May 15, 1997, entitled “Design for a Multi Application Smart Card,” and United States Provisional Application No. 60/046,543, filed on May 15, 1997, entitled “Virtual Machine for a Multi Application Smart Card,” which are incorporated by reference herein in their entireties.
Integrated circuit (IC) cards are becoming increasingly used for many different purposes in the world today, principally because they are ideal tools for the delivery of distributed, secure information processing at a low cost. An IC card, also called a “smart card,” is a card typically the size of a conventional credit card, but which contains a computer chip on the card. The computer chip on the IC card typically includes a microprocessor, read-only-memory (ROM), electrically erasable programmable read-only-memory (EEPROM), a random access memory (RAM), an input/output (I/O) mechanism, and other circuitry to support the microprocessor in its operations. The computer chip can execute one or more applications stored on the card. Examples of applications that IC cards are being used to store and execute include credit/debit, electronic money/purse, telephone calling card, and loyalty reward applications.
When an application is initially loaded onto an IC card, the application may include data that is associated with the application. Such data may include, for example, data that identifies the cardholder, such as the cardholder's name and account number. Additionally, the associated data may also include a promotional or bonus value provided by the application provider to the cardholder for loading the application. For example, with a telephone calling card application, an application provider may provide a certain amount of free calling time. As another example, with an electronic purse application, an application provider may provide bonus electronic cash. As yet another example, with a frequent flyer loyalty application, an application provider may provide free miles.
The use of application data to provide promotional or bonus value creates a potential problem for the IC card manufacturer and the application provider regarding the integrity of loading applications. A solution is needed to prevent a cardholder from intentionally or unintentionally copying an application when it is first loaded, and reloading the application thereafter to reload the value in the data associated with the application. By repeated reloading of an application, a cardholder may potentially obtain an unlimited amount of promotional or bonus value to which he or she is not entitled. At the same time, however, cardholders may be required to reload an application for legitimate reasons, such as for updating an application.
Accordingly, a need exists for a method of loading an application onto an IC card such that a cardholder is prevented from illegitimately reloading an application once it has been loaded onto the IC card.
In accordance with a preferred embodiment of the present invention, there is provided a method of loading an application copy onto an integrated circuit card, wherein the application copy is one of a plurality of copies of an application. The application copy has an associated application identifier that uniquely identifies the application from other applications and an application copy number that is unique for each copy of the application. The integrated circuit card includes a microprocessor and a memory coupled to the microprocessor. The memory includes an application history list area for storing application identifiers and application copy numbers of applications that have been previously loaded onto the integrated circuit card. The method includes receiving by the integrated circuit card the application copy, the application identifier, and the application copy number; determining by the integrated circuit card whether the application identifier and the application copy number are contained in the application history list area; and failing to load the application copy by the integrated circuit card if the application identifier and the application copy number are contained in the application history list area.
As it is used in this specification and the amended claims, the term “unique” to refer to application copy numbers refers to two types of numbers: (1) non-random numbers that are actually determined to be unique, and (2) random numbers that are determined to be probabilistically unique for a given cardholder.
The method of the present invention may further include the steps of allocating a predetermined portion of the memory for the application history list area; determining by the integrated circuit card whether the application history list area is fall; and failing to load the application copy if the application history list is full.
The method of the present invention may further include the step of adding the application identifier and the application copy number to the application history list area if the application identifier and the application copy number are not contained in the application history list area. Thus, once a copy of an application is loaded onto the integrated circuit card, the application identifier and the application copy number associated with the copy of the application are stored in the application history list area for future checking.
The method of the present invention may also provide a mechanism by which application providers not concerned with repeated loading of applications may circumvent storage of the application identifier and the application copy number in the application history list area. For example, an application copy number of zero can be used to signify that an application may be reloaded as often as desired. Accordingly, the method of the present invention may further include the step of adding the application identifier and the application copy number to the application history list area if the application identifier and the application copy number are not contained in the application history list area and the application copy number is not zero.
The application copy may include both application code and application data. The application identifier and the application copy number may be contained in the application data.
Preferably, the application copy, the application identifier, and the application copy number are transmitted to the integrated circuit card by an application provider. Preferably, before transmitting the application copy to the integrated circuit card, the application provider encrypts at least a portion of the application copy. It is also preferred that an application provider transmit a key transformation unit, which includes information relating to the encryption of the encrypted portion of the application copy. It is further preferred that the integrated circuit card has a first public key pair and that the application provider encrypts the key transformation unit with the public key of the first public key pair before transmitting the key transformation unit to the integrated circuit card.
When the application provider encrypts the key transformation unit with the public key of the first public key pair, the integrated circuit card may decrypt the encrypted key transformation unit with the secret key of the first public key pair. Once the key transformation unit is decrypted, the integrated circuit card may decrypt the application copy using the information contained in the decrypted key transformation unit.
It is also preferred that the application provider has a second public key pair and that the application provider form a signed application copy by encrypting the application copy with the secret key of the second public key pair. The application provider may then transmit both the application copy and the signed application copy to the integrated circuit card.
It is further preferred that the application provider register the public key of the second public key pair with a certification authority, which has a third public key pair. The certification authority may then provide a certificate to the application provider by encrypting the public key of the second public key pair with the secret key of the third public key pair. The application provider may transmit the certificate to the integrated circuit card.
When a certificate is transmitted to the integrated circuit card, the integrated circuit card may obtain the public key of the second key pair by decrypting the certificate using the public key of the third public key pair. The integrated circuit card may then verify the signed application copy using the public key of the second public key pair. The integrated circuit card may fail to load the application copy if the signed application copy is not verified.
In accordance with another preferred embodiment of the present invention, there is provided an integrated circuit card that includes a microprocessor and a memory coupled to the microprocessor. The memory includes an application history list area for storing application identifiers and application copy numbers, each application identifier and each application copy number being associated with an application copy. The application copy is one of a plurality of copies of an application. Each application identifier uniquely identifies an application from other applications, and each application copy number uniquely identifies an application copy from other application copies. The integrated circuit card of the invention further includes means for determining whether an application identifier and an application copy number associated with an application copy to be loaded into the memory area are contained in the application history list area and means for failing to load the application copy to be loaded if the associated application identifier and the associated application copy number are contained in the application history list area.
FIG. 1 is a schematic representation of an IC card in accordance with a preferred embodiment of the present invention;
FIG. 2 is a perspective view of an IC card and terminal in accordance with a preferred embodiment of the present invention;
FIG. 3 is a functional block diagram of an IC card in accordance with a preferred embodiment of the present invention;
FIG. 4 is a diagram of a system for remotely loading an application from an application provider onto an IC card in accordance with a preferred embodiment of the present invention;
FIG. 5 is a schematic representation of an application load unit in accordance with a preferred embodiment of the present invention;
FIG. 6 is a flowchart of exemplary steps for processing the application load unit of FIG. 5 in accordance with a preferred embodiment of the present invention; and
FIG. 7 is a flowchart illustrating exemplary steps of a file loading routine, which may be implemented by the operating system of an IC card in accordance with a preferred embodiment of the present invention.
FIG. 1 provides a schematic representation of a typical IC card 10 that can be used with the presently claimed invention. The IC card 10 includes an integrated circuit 12 having one or more electrical contacts 14 connected to the integrated circuit 12.
FIG. 2 shows an example of a device with which the IC card 10 communicates. As used in this specification and the appended claims, the terms “interface device” and “terminal” shall be used to generically describe devices with which an IC card may communicate. A typical terminal 20, as shown in FIG. 2, includes a card reader 22, a keypad 24, and a display 26. The keypad 24 and the display 26 allow a user of the IC card 10 to interact with the terminal. The keypad 24 allows the user to select a transaction, to enter a personal identification number (“PIN”), and to enter transactional information. The display 26 allows the user to receive informational messages and prompts for data entry. Other types of terminals may include IC card-compatible ATM machines and telephones.
FIG. 3 provides a functional block diagram of the integrated circuit 12. At a minimum, the integrated circuit 12 includes a processing unit 100 and a memory unit 110. Preferably, the integrated circuit 12 also includes control logic 150, a timer 160, security circuitry 170, input/output ports 180, and a co-processor 190. The control logic 150 provides, in conjunction with the processing unit 100, the control necessary to handle communications between the memory unit 110 and input/output ports 180. The timer 160 provides a timing reference signal for the processing unit 100 and the control logic 150. The security circuitry 170 preferably provides fusible links that connect the input/output ports 180 to internal circuitry for testing during manufacturing. The fusible links are burned after completion of testing to limit later access to sensitive circuit areas. The co-processor 190 provides the ability to perform complex computations in real time, such as those required by cryptographic algorithms.
The memory unit 110 may include different types of memory, such as volatile and non-volatile memory and read-only and programmable memory. For example, as shown in FIG. 3, the memory unit 110 may include read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), and random-access memory (RAM).
The memory unit 110 stores IC card data such as secret cryptographic keys and a user PIN. The secret cryptographic keys may be any type of well-known cryptographic keys, such as the private keys of public-key pairs. Preferably, the secret cryptographic keys are stored in a secure area of ROM or EEPROM that is either not accessible or has very limited accessibility from outside the IC card.
The memory unit 110 also stores the operating system of the IC card. The operating system loads and executes IC card applications and provides file management and other basic card services to the IC card applications. Preferably, the operating system is stored in ROM.
In addition to the basic services provided by the operating system, the memory unit 110 may also include one or more IC card applications. For example, if the IC card is to be used as an electronic cash card, an application called MONDEX™ PURSE (from Mondex International Limited) might be included on the IC card, which loads an electronic value of a certain currency from a user's account in a financial institution onto the IC card. Preferably, the operating system of the IC card 10 should support multiple applications, such as the MULTOS™ operating system from Mondex International Limited.
An IC card application may include both program and associated data files, which are typically stored in EEPROM. The application program may be written either in the native programming code of the processing unit 100 or it may be written in a higher level language that must be translated before it is executed on the processing unit 100. An example of such a higher level language for use on IC cards is the MULTOS™ Executable Language (MEL). Advantageously, by using a higher level language such as MEL, an application program is capable of running on multiple hardware platforms without any need for re-writing.
Because IC cards typically have limited memory capacity due to the size and cost restraints of placing memory on the IC cards, an IC card may also have primitives stored in ROM, which are subroutines that perform frequently used functions or procedures, such as mathematical functions. The primitives are usually written in the native language of the processing unit 100 so that they can be executed very quickly.
In FIG. 4, there is shown a diagram of a system for remotely loading an application from an application provider 401 onto an IC card 403. The application provider 401 may be a card issuer, a bank, or any other entity that provides application loading services. The IC card 403 communicates with the application provider 401 through an interface device 405, which may be a bank terminal, an ATM, or any other device that communicates with an IC card. The application provider 401 and the interface device 405 communicate by way of a data conduit 407, which can be a telephone line, a cable line, a satellite link, an Internet connection, an intra-net connection, or any other type of communications link.
When loading applications onto an IC card remotely, an application provider is required to address several security issues. First, an application provider must ensure that an application is sent only to the cardholder who is intended to receive the application. Second, the application provider must ensure the privacy of any confidential or trade secret information contained in the applications to be loaded. Third, because the data conduit 407 may be an open link and subject to third parties possibly intercepting or replacing applications being transmitted, an application provider must take security measures to enable the IC card to authenticate the application.
The solutions to these security issues typically involve encryption using symmetric and/or asymmetric cryptography techniques. Symmetric cryptography involves encoding and decoding data using the same mathematical number, called a “key,” which must be kept secret. On the other hand, asymmetric cryptography, or “public key” cryptography as it is also called, involves encoding data with one key and decoding data with another key. The two keys are referred to as a key pair, and one of the key pair must be kept secret while the other of the key pair may be publicly distributed. Each key of a key pair may be used to encode data; however, once data is encoded by using one key, it can only be decoded by using the other key.
In the system of FIG. 4, it is assumed that the application provider 401 and the IC card 403 each have cryptographic key pairs. The generation of cryptographic keys is performed by any manner known by those skilled in the art. The system also utilizes a Certification Authority (CA) 409, which also has a cryptographic key pair. The CA 409 may be any entity that is trusted to keep the secret key of its public key pair private and to authenticate the identity of other entities—as, for example, the identity of the application provider 401.
In the system of FIG. 4, the application provider 401 applies for registration of its public key with the CA 409. To do so, the application provider 401 must meet the identification requirements of the CA 409. If the application provider 401 meets these identification requirements, the CA 409 will issue an Application Load Certificate (ALC) 413, which includes the public key of the application provider 401 encoded or “signed” by the secret key of the CA 409. The ALC 413 may be decoded using the public key of the CA 409, which is publicly distributed. Since the CA 409 is trusted to keep its secret key private and to authenticate the identity of the application provider 401, any entity receiving the ALC 413 is assured that the public key contained within the certificate belongs to the application provider 401.
To load an application onto the IC card 403, the application provider 401 transmits an Application Load Unit (ALU) 411 to the interface device 405 via the data conduit 407. The contents of the ALU 411 are shown schematically in FIG. 5. The ALU preferably includes an Application Unit (AU) 415, a signed Application Unit (AUs) 417, a Key Transformation Unit (KTU) 419, and the ALC 413.
The AU 415 contains the application code and data that are to be stored on the IC card. Some or all of the application code and data may be encrypted to protect confidential or trade secret portions of the application code and data.
The AUs 417 is the application code and data AU 415 signed with the secret key of the application provider 401. Using the public key of the application provider 401 provided in the ALC 413, the IC card 403 may decode the AUs 417 and compare it to the AU 415 to ensure that the AU 415 has not been tampered with during transmission.
The KTU 419 contains information relating to the encrypted portions of the AU 415. This information allows the IC card 403 to decode those encrypted portions so that the application code and data can be accessed by the IC card 403. The KTU 419 is signed with the public key of the IC card 403, which ensures that only the intended IC card 403 can decode the KTU 419 (using the IC card's secret key). Once the KTU 419 is decoded, the IC card 403 may use the information contained in the KTU 419 to decode the encrypted portions of the application code and data of AU 415.
FIG. 6 shows a flow chart of the steps for processing the ALU 411 when it is received by the IC card 403. In step 601, the IC card 403 receives the ALU 411 from the application provider 401. The ALU 411 is placed in the EEPROM of the IC card 403 along with header information indicating the location in memory of AU 415, AUs 417, KTU 419 and ALC 413.
In step 603, the ALC 413 is decoded using the public key of the CA 409. The IC card 403 preferably stores in its memory a copy of the CA public key because it may be used in many transactions. Alternatively, the IC card could obtain the public key from a trusted storage location, such as the interface device 405. Once decoded, the ALC 413 provides the IC card 403 with a trusted copy of the public key of the application provider 401.
In step 605, the IC card 403 uses the application provider's public key to verify the AU 415 was not tampered with during transmission. Using the public key of the application provider 401, the IC card 403 decodes the AUs 417, which was signed with the secret key of the application provider 401. Once the AUs 417 is decoded, the decoded AUs 417 is compared to the AU 415. If the two units match, then the AU 415 is verified.
In step 607, the KTU 419, which has been encrypted with the public key of the IC card 403, is decoded using the private key of the IC card 403. In step 609, the information in the decoded KTU 419 is used to decode the encrypted portions of the AU 415. The KTU 419 may contain, for example, either an algorithm or a key for use in decoding the AU 415.
In addition to the security and authentication measures discussed above, other security and authentication measures may also be employed. Additional methods of security and authentication have been addressed, for example, in the related patent applications entitled, “Secure Multi-Application IC Card System Having Selective Loading and Deleting Capability,” by Everett et al., filed Feb. 12, 1998, and “Key Transformation Unit for an IC Card,” by Richards et al., filed May 11, 1998. Both of these applications are hereby incorporated by reference.
In accordance with a preferred embodiment of the present invention, the data portion of the AU 415 includes an application identifier for the application to be loaded onto the IC card 403 and an application copy number, which is unique for each copy of an application to be loaded onto the IC card 403. As it is used in this specification and the amended claims, the use of the term “unique” in relation to application copy numbers refers both to non-random numbers that are actually determined to be unique and to random numbers that are determined to be probabilistically unique for a given IC card. Preferably, the data portion of the AU 415 containing the application identifier and the application copy number is encoded (and the KTU 419 contains the information necessary to decode this data portion).
FIG. 7 is a flowchart illustrating the steps of a file loading routine that may be implemented by the operating system of the IC card 403 to take advantage of the application identifier and the application copy number contained in the AU 415 to prevent a cardholder from repeatedly loading the same application onto the IC card 403. In the embodiment of FIG. 7, the application copy number is a random number, also called a “random seed.” In step 701, the file loading routine receives the file loading command load_file_command from the security manager of the operating system, OS_Security_Manager. The OS_Security_Manager of the operating system is responsible for verification and decoding of the ALU 411 as discussed with regard to FIG. 6.
In step 703, the application identifier and random seed associated with the application, referred to as load_file_command.application_id and load_file_command.random_seed, respectively, are checked against entries in an application history list stored on the IC card, referred to as os_global_data.app_history_list. The application history list contains entries for each set of application identifier and random seed associated with an application loaded onto the IC card 403. It is preferred that the application history list be stored in a secure area of EEPROM that is not accessible from outside the IC card.
If the application identifier and random seed associated with the application to be loaded are found in the application history list, in step 705, the response status load_file_response.status is set to “failed” and the error description load_file_response.error_cause is set to “application previously loaded.” The error response load_file_response is returned to the OS_Security_Manager, indicating that the load file routine failed to load the application because the application had previously been loaded onto the IC card.
If the application identifier and random seed associated with the application to be loaded are not found in the application history list, in step 707, the random seed is checked to determine whether it is equal to zero and the application history list is checked to determine whether it is full. A random seed with a value of zero indicates that the application does not contain any economic value included in its data, and thus may be reloaded as often as desired. If the random seed associated with the application is not zero (indicating there is an economic value included with the application) and the application history list is full, the response status load_file_response.status is set to “failed” and the error description load_file_response.error_cause is set to “application history list full.” In this case, the application cannot be loaded because the application history list is full and, therefore, the application identifier and random seed cannot be added to the application history list for future checking.
If an error condition has not been triggered in steps 703 or 707, in step 711, the directory file record associated with the application is added to the directory file of the IC card—i.e., the application is loaded onto the IC card 403. In step 713, it is checked whether the random seed is equal to zero. If the random seed is not equal to zero (indicating that there is an economic value included with the application), the application identifier and the random seed are added to the application history list for checking against subsequent applications sought to be loaded onto the IC card. After updating the application history list, the response status load_file_response.status is set to “success” and sent to the OS_Security_Manager.
If the random seed is equal to zero (indicating that there is no economic value included with the application), the application identifier and random seed are not added to the application history list. Instead, step 717 is skipped, and the response status load_file_response.status is set to “success” and sent to the OS_Security_Manager.
Advantageously, the file loading routine of FIG. 7 prevents a cardholder from illegitimately reloading an application. If a cardholder intercepts and copies an application to be loaded onto an IC card, the cardholder cannot later reload the application because, once the application is loaded, the application identifier and random seed are stored permanently on the IC card. If a cardholder attempts to reload the application, the operating system of the IC card will fail to reload the application because the application identifier and random seed of the application will match an entry in the application history list of the IC card.
On the other hand, a cardholder is not prevented from legitimately reloading an application from an application provider. Since an application provider will generate a new random seed for each copy of an application it provides, it will be unlikely for a cardholder to receive a second copy of the application from the application provider with the same random seed. Of course, the application provider must use a random seed of sufficient length to ensure that the probability of any cardholder twice receiving the same random seed is sufficiently unlikely.
Alternatively, instead of using a random number, an application provider may use any unique number associated with copies of applications it provides to each cardholder. For example, an application provider may keep a counter that tracks the number of copies of an application that is has provided. The application provider may use the value of the counter to provide a unique number each time it provides a copy of the application to a cardholder. The random seed embodiment is preferred, however, because it is easier to manage (i.e., there is no information that is required to be stored or managed).
Although the present invention has been described with reference to certain preferred embodiments, various modifications, alterations, and substitutions will be known or obvious to those skilled in the art without departing from the spirit and scope of the invention, as defined by the appended claims.
|Cited Patent||Filing date||Publication date||Applicant||Title|
|US4214230||Jan 19, 1978||Jul 22, 1980||Rolf Blom||Personal identification system|
|US4218582||Oct 6, 1977||Aug 19, 1980||The Board Of Trustees Of The Leland Stanford Junior University||Public key cryptographic apparatus and method|
|US4259720||Jan 9, 1978||Mar 31, 1981||Interbank Card Association||Security system for electronic funds transfer system|
|US4302810||Dec 28, 1979||Nov 24, 1981||International Business Machines Corporation||Method and apparatus for secure message transmission for use in electronic funds transfer systems|
|US4305059||Jan 3, 1980||Dec 8, 1981||Benton William M||Modular funds transfer system|
|US4321672||Nov 26, 1979||Mar 23, 1982||Braun Edward L||Financial data processing system|
|US4341951||Jul 2, 1980||Jul 27, 1982||Benton William M||Electronic funds transfer and voucher issue system|
|US4405829||Dec 14, 1977||Sep 20, 1983||Massachusetts Institute Of Technology||Cryptographic communications system and method|
|US4408203||Nov 10, 1980||Oct 4, 1983||Mastercard International, Inc.||Security system for electronic funds transfer system|
|US4423287||Jun 26, 1981||Dec 27, 1983||Visa U.S.A., Inc.||End-to-end encryption system and method of operation|
|US4442345||Jul 29, 1983||Apr 10, 1984||Compagnie Internationale Pour L'informatique Cii Honeywell Bull (Societe Anonyme)||Apparatus for and method of recycling recording carriers, such as credit cards, including non-volatile erasable memories for identification data|
|US4453074||Oct 19, 1981||Jun 5, 1984||American Express Company||Protection system for intelligent cards|
|US4467139||Mar 12, 1981||Aug 21, 1984||Compagnie Internationale Pour L'informatique Cii Honeywell Bull||Process and system for transmission of signed messages|
|US4498000||Dec 30, 1981||Feb 5, 1985||Transac-Alcatel||Security method and device for communicating confidential data via an intermediate stage|
|US4536647||Jul 15, 1983||Aug 20, 1985||Atalla Corporation||Pocket banking terminal, method and system|
|US4578530||Dec 7, 1983||Mar 25, 1986||Visa U.S.A., Inc.||End-to-end encryption system and method of operation|
|US4605820||Nov 10, 1983||Aug 12, 1986||Visa U.S.A. Inc.||Key management system for on-line communication|
|US4629872||Nov 16, 1984||Dec 16, 1986||Telefonaktiebolaget Lm Ericsson||Method and apparatus for verifying personal identification numbers and checking stored number series in identification media|
|US4630201||Feb 14, 1984||Dec 16, 1986||International Security Note & Computer Corporation||On-line and off-line transaction security system using a code generated from a transaction parameter and a random number|
|US4650978||Feb 18, 1986||Mar 17, 1987||Rmh Systems, Inc.||Off line cash card system and method|
|US4669596||Oct 22, 1985||Jun 2, 1987||Debitek, Inc.||Vending machine accessory permitting dual mode machine operation with either money or coded cards|
|US4705211||Mar 5, 1985||Nov 10, 1987||Sharp Kabushiki Kaisha||Card-type data terminal operatively connectable to electronic apparatus|
|US4709136||Jun 3, 1986||Nov 24, 1987||Toppan Moore Company, Ltd.||IC card reader/writer apparatus|
|US4709137||Apr 11, 1985||Nov 24, 1987||Omron Tateisi Electronics Co.||IC card and financial transaction processing system using IC card|
|US4727243||Oct 24, 1984||Feb 23, 1988||Telenet Communications Corporation||Financial transaction system|
|US4727244||Jul 10, 1986||Feb 23, 1988||Casio Computer Co., Ltd.||IC card system|
|US4731842||Dec 10, 1985||Mar 15, 1988||International Business Machines Corporation||Security module for an electronic funds transfer system|
|US4734568||Jul 30, 1986||Mar 29, 1988||Toppan Moore Company, Ltd.||IC card which can set security level for every memory area|
|US4736094||Mar 29, 1985||Apr 5, 1988||Omron Tateisi Electronics Co.||Financial transaction processing system using an integrated circuit card device|
|US4742215||May 7, 1986||May 3, 1988||Personal Computer Card Corporation||IC card system|
|US4745267||Dec 26, 1984||May 17, 1988||Fairview Partners||Fraudulent card intercept system|
|US4746788||Sep 15, 1986||May 24, 1988||Casio Computer Co., Ltd.||Identification system for authenticating both IC card and terminal|
|US4748557||Sep 2, 1986||May 31, 1988||Kabushiki Kaisha Toshiba||Data processing terminal device for storing encrypted journal data and decrypting the data|
|US4748668||Jul 9, 1986||May 31, 1988||Yeda Research And Development Company Limited||Method, apparatus and article for identification and signature|
|US4752677||Sep 18, 1986||Jun 21, 1988||Casio Computer Co., Ltd.||Customer service system for use in IC card system|
|US4755660 *||Oct 17, 1986||Jul 5, 1988||Casio Computer Co., Ltd.||IC card system|
|US4757185||Apr 27, 1987||Jul 12, 1988||Hitachi, Ltd.||Automatic cash transaction apparatus|
|US4757543||Sep 2, 1986||Jul 12, 1988||Kabushiki Kaisha Toshiba||Encrypting and decrypting device which stores an algorithm in a memory|
|US4759063||Aug 22, 1983||Jul 19, 1988||Chaum David L||Blind signature systems|
|US4759064||Oct 7, 1985||Jul 19, 1988||Chaum David L||Blind unanticipated signature systems|
|US4767920||May 16, 1986||Aug 30, 1988||Hitachi Maxell, Ltd.||Reader and writer for an IC card|
|US4778983||Oct 14, 1986||Oct 18, 1988||Sanden Corporation||Automatic vending machine|
|US4785166||May 5, 1986||Nov 15, 1988||Kabushiki Kaisha Toshiba||Reader/writer for portable recording medium with power supply abnormality detection|
|US4786790||Mar 4, 1988||Nov 22, 1988||Siemens Aktiengesellschaft||Data exchange system with authentication code comparator|
|US4797542||Jan 27, 1987||Jan 10, 1989||Casio Computer Co., Ltd.||Multiple application electronic card-like apparatus|
|US4797920||May 1, 1987||Jan 10, 1989||Mastercard International, Inc.||Electronic funds transfer system with means for verifying a personal identification number without pre-established secret keys|
|US4798941||Mar 13, 1986||Jan 17, 1989||501 Toppan Moore Company, Ltd.||IC card|
|US4802218||Nov 26, 1986||Jan 31, 1989||Wright Technologies, L.P.||Automated transaction system|
|US4803347||Mar 25, 1987||Feb 7, 1989||Omron Tateisi Electronics Co.||Automatic transaction machine|
|US4811393||Jul 9, 1987||Mar 7, 1989||Bull, S.A.||Method and system for diversification of a basic key and for authentication of a thus-diversified key|
|US4816653||May 16, 1986||Mar 28, 1989||American Telephone And Telegraph Company||Security file system for a portable data carrier|
|US4816654||May 16, 1986||Mar 28, 1989||American Telephone And Telegraph Company||Improved security system for a portable data carrier|
|US4825052||Dec 30, 1986||Apr 25, 1989||Bull Cp8||Method and apparatus for certifying services obtained using a portable carrier such as a memory card|
|US4831245||Sep 16, 1987||May 16, 1989||Fujitsu Limited||System for data field area acquisition in IC card for multiple services|
|US4833595||Sep 18, 1987||May 23, 1989||Kabushiki Kaisha Toshiba||Portable electronic apparatus with data remaining counter|
|US4839504||Jul 17, 1987||Jun 13, 1989||Casio Computer Co., Ltd.||IC card system compatible with bank account system|
|US4839792||Jun 18, 1987||Jun 13, 1989||Kabushiki Kaisha Toshiba||Portable electronic apparatus with a device for determining data validity|
|US4849614||Dec 18, 1986||Jul 18, 1989||Toppan Moore Company, Ltd.||Composite IC card|
|US4853522||Sep 16, 1987||Aug 1, 1989||Fujitsu Limited||System for permitting access to data field area in IC card for multiple services|
|US4853961||Dec 18, 1987||Aug 1, 1989||Pitney Bowes Inc.||Reliable document authentication system|
|US4874935||Oct 5, 1988||Oct 17, 1989||Data Card Coprporation||Smart card apparatus and method of programming same|
|US4877945||Nov 9, 1987||Oct 31, 1989||Hitachi, Ltd.||IC card having a function to exclude erroneous recording|
|US4877947||Jul 30, 1987||Oct 31, 1989||Oki Electric Industry Co., Ltd.||Transaction processing system|
|US4879747||Mar 21, 1988||Nov 7, 1989||Leighton Frank T||Method and system for personal identification|
|US4882474||Feb 5, 1988||Nov 21, 1989||American Telephone And Telegraph Company||Security file system and method for securing data in a portable data carrier|
|US4887234||Jan 13, 1989||Dec 12, 1989||Kabushiki Kaisha Toshiba||Portable electronic device with plural memory areas|
|US4891503||Mar 29, 1988||Jan 2, 1990||Gascard, Inc.||Distributed authorization system|
|US4891506||Feb 10, 1988||Jan 2, 1990||Kabushiki Kaisha Toshiba||Multi-use portable electronic device|
|US4900904||Oct 17, 1988||Feb 13, 1990||Wright Technologies, L.P.||Automated transaction system with insertable cards for downloading rate or program data|
|US4901276||Mar 6, 1989||Feb 13, 1990||Kabushiki Kaisha Toshiba||Portable electronic apparatus having a function of checking for empty areas in which to write data|
|US4906828||May 31, 1988||Mar 6, 1990||Paperless Accounting, Inc.||Electronic money purse and fund transfer system|
|US4907270||Jul 9, 1987||Mar 6, 1990||Bull Cp8||Method for certifying the authenticity of a datum exchanged between two devices connected locally or remotely by a transmission line|
|US4926480||May 24, 1988||May 15, 1990||David Chaum||Card-computer moderated systems|
|US4935962||Jun 12, 1989||Jun 19, 1990||Ncr Corporation||Method and system for authentication|
|US4949257||Nov 7, 1989||Aug 14, 1990||Zvi Orbach||Automated merchandising system for computer software|
|US4961142||Jun 29, 1988||Oct 2, 1990||Mastercard International, Inc.||Multi-issuer transaction device with individual identification verification plug-in application modules for each issuer|
|US4969188||Feb 4, 1988||Nov 6, 1990||Gretag Aktiengesellschaft||Process and apparatus for the protection of secret elements in a network of encrypting devices with open key management|
|US4977595||Mar 28, 1990||Dec 11, 1990||Nippon Telegraph And Telephone Corporation||Method and apparatus for implementing electronic cash|
|US4984270||Jun 19, 1987||Jan 8, 1991||The Exchange System||Method and system for transmission of financial data|
|US4985615||Aug 23, 1989||Jan 15, 1991||Kabushiki Kaisha Toshiba||Portable electronic apparatus having key data for limiting memory access|
|US4987593||Apr 5, 1990||Jan 22, 1991||David Chaum||One-show blind signature systems|
|US4993068||Nov 27, 1989||Feb 12, 1991||Motorola, Inc.||Unforgeable personal identification system|
|US4995081||Nov 6, 1989||Feb 19, 1991||Leighton Frank T||Method and system for personal identification using proofs of legitimacy|
|US4996711||Jun 21, 1989||Feb 26, 1991||Chaum David L||Selected-exponent signature systems|
|US5001753||Mar 7, 1988||Mar 19, 1991||U.S. Philips Corporation||Crytographic system and process and its application|
|US5003594||Dec 20, 1989||Mar 26, 1991||Hitachi Maxell, Ltd.||Portable electronic device and its secret information collation method|
|US5005200||Mar 7, 1989||Apr 2, 1991||Fischer Addison M||Public key/signature cryptosystem with enhanced digital signature certification|
|US5010239||Oct 4, 1988||Apr 23, 1991||Omron Tateisi Electronics Co.||IC card reader/writer|
|US5012074||Mar 16, 1988||Apr 30, 1991||Mitsubishi Denki Kabushiki Kaisha||Apparatus for securing an IC-card issuing station|
|US5012076||Mar 1, 1989||Apr 30, 1991||Hitachi, Ltd.||Transaction method wherein transaction amount is compared with account balance before ID is entered|
|US5014312||Jan 13, 1989||May 7, 1991||Sgs-Thomson Microelectronics Sa||Security system for the protection of programming zones of a chip card|
|US5016274||Nov 8, 1988||May 14, 1991||Silvio Micali||On-line/off-line digital signing|
|US5038025||Feb 12, 1990||Aug 6, 1991||Hitachi Maxell, Ltd.||Method of receiving program down-loaded to IC card and IC card thereof|
|US5068894||Aug 22, 1990||Nov 26, 1991||U.S. Philips Corp.||Method of generating a unique number for a smart card and its use for the cooperation of the card with a host system|
|US5093862||Jul 18, 1989||Mar 3, 1992||Spa Syspatronic Ag||Data carrier-controlled terminal in a data exchange system|
|US5097115||Sep 28, 1989||Mar 17, 1992||Fujitsu Limited||Transaction authentication system|
|US5120939||Nov 9, 1989||Jun 9, 1992||At&T Bell Laboratories||Databaseless security system|
|US5128997||Jul 17, 1990||Jul 7, 1992||Centre National D'etudes Des Telecommunications||Wired microcircuit card and a method for transactions between a corresponding wired microcircuit card and a terminal|
|US5131038||Nov 7, 1990||Jul 14, 1992||Motorola, Inc.||Portable authentification system|
|US5142578||Aug 22, 1991||Aug 25, 1992||International Business Machines Corporation||Hybrid public key algorithm/data encryption algorithm key distribution method based on control vectors|
|US5146499||Oct 22, 1990||Sep 8, 1992||U.S. Philips Corporation||Data processing system comprising authentification means viz a viz a smart card, an electronic circuit for use in such system, and a procedure for implementing such authentification|
|US5148481||Jul 1, 1991||Sep 15, 1992||International Business Machines Corporation||Transaction system security method and apparatus|
|US5161231||Mar 12, 1991||Nov 3, 1992||Kabushiki Kaisha Toshiba||Processing system which transmits a predetermined error code upon detection of an incorrect transmission code|
|US5162989||Dec 27, 1989||Nov 10, 1992||Oki Electric Industry Co., Ltd.||Information rental system including processor equipped IC card having data erasing means|
|US5163098||Sep 6, 1990||Nov 10, 1992||Dahbura Abbud S||System for preventing fraudulent use of credit card|
|US5164988||Oct 31, 1991||Nov 17, 1992||International Business Machines Corporation||Method to establish and enforce a network cryptographic security policy in a public key cryptosystem|
|US5165043||Mar 9, 1990||Nov 17, 1992||Hitachi, Ltd.||Memory card system and access method for memory card|
|US5166503||Sep 19, 1990||Nov 24, 1992||Mitsubishi Denki Kabushiki Kaisha||IC memory card|
|US5175416||May 17, 1991||Dec 29, 1992||Mansvelt Andre Peter||Funds transfer system|
|US5180901||Apr 5, 1991||Jan 19, 1993||Kabushiki Kaisha Toshiba||IC card with individual authentication function|
|US5191193||Oct 9, 1990||Mar 2, 1993||Gemplus Card International||System of payment or information transfer by money card with electronic memory|
|US5191608||Sep 11, 1991||Mar 2, 1993||Gemplus Card International||Method for the management of an application program loaded in a microcircuit medium|
|US5200999||Sep 27, 1991||Apr 6, 1993||International Business Machines Corporation||Public key cryptosystem key management based on control vectors|
|US5201000||Sep 27, 1991||Apr 6, 1993||International Business Machines Corporation||Method for generating public and private key pairs without using a passphrase|
|US5202922||Nov 29, 1991||Apr 13, 1993||Kabushiki Kaisha Toshiba||Data communication system|
|US5214702||May 13, 1992||May 25, 1993||Fischer Addison M||Public key/signature cryptosystem with enhanced digital signature certification|
|US5224162||Jun 8, 1992||Jun 29, 1993||Nippon Telegraph And Telephone Corporation||Electronic cash system|
|US5243175||Apr 6, 1989||Sep 7, 1993||Minolta Camera Kabushiki Kaisha||Method and apparatus for determining the validity of data in an integrated circuit card|
|US5247578||Jan 22, 1992||Sep 21, 1993||France Telecom Etablissement Autonome De Droit Public (Centre National D'etudes Des Telecommunications)||Process for exchange of rights between microprocessor cards|
|US5293577||Jul 17, 1991||Mar 8, 1994||Siemens Nixdorf Informationssysteme Ag||Method and apparatus for preventing inadmissible deviations from the runtime protocol of an application in a data exchange system|
|US5371797||Jan 19, 1993||Dec 6, 1994||Bellsouth Corporation||Secure electronic funds transfer from telephone or unsecured terminal|
|US5420405||Feb 26, 1993||May 30, 1995||Chasek; Norman E.||Secure, automated transaction system that supports an electronic currency operating in mixed debit & credit modes|
|US5452431||Sep 16, 1992||Sep 19, 1995||U.S. Philips Corporation||Microcircuit for a chip card comprising a protected programmable memory|
|US5473690||Jan 16, 1992||Dec 5, 1995||Gemplus Card International||Secured method for loading a plurality of applications into a microprocessor memory card|
|US5485520||Oct 7, 1993||Jan 16, 1996||Amtech Corporation||Automatic real-time highway toll collection from moving vehicles|
|US5511121||Sep 8, 1994||Apr 23, 1996||Bell Communications Research, Inc.||Efficient electronic money|
|US5517011||Nov 21, 1994||May 14, 1996||Oki Electric Industry Co. Ltd.||Slotless card reader|
|US5530232||Dec 22, 1993||Jun 25, 1996||Datamark Services, Inc.||Multi-application data card|
|US5534857||Nov 10, 1992||Jul 9, 1996||Security Domain Pty. Ltd.||Method and system for secure, decentralized personalization of smart cards|
|US5539825||Nov 21, 1994||Jul 23, 1996||Fujitsu Limited||Electronic cashless transaction system|
|US5542081||Aug 22, 1994||Jul 30, 1996||Gemplus Card International||IC card designed to receive multiple programs in a progammable memory|
|US5544246||Sep 17, 1993||Aug 6, 1996||At&T Corp.||Smartcard adapted for a plurality of service providers and for remote installation of same|
|US5546523||Apr 13, 1995||Aug 13, 1996||Gatto; James G.||Electronic fund transfer system|
|US5557516||Feb 4, 1994||Sep 17, 1996||Mastercard International||System and method for conducting cashless transactions|
|US5574269||Feb 17, 1994||Nov 12, 1996||Fujitsu Limited||Processing system for processing information in card having plurality of functions|
|US5578808||Feb 28, 1995||Nov 26, 1996||Datamark Services, Inc.||Data card that can be used for transactions involving separate card issuers|
|US5581708||Mar 22, 1994||Dec 3, 1996||Kabushiki Kaisha Toshiba||Data transmission system using electronic apparatus having a plurality of transmission protocols|
|US5588146||Oct 21, 1993||Dec 24, 1996||Gemplus Card International||Method for the acquisition of software and data-processing system to implement the method|
|US5682027||Oct 26, 1993||Oct 28, 1997||Intellect Australia Pty Ltd.||System and method for performing transactions and a portable intelligent device therefore|
|US5692132||Jun 7, 1995||Nov 25, 1997||Mastercard International, Inc.||System and method for conducting cashless transactions on a computer network|
|US5699528||Oct 31, 1995||Dec 16, 1997||Mastercard International, Inc.||System and method for bill delivery and payment over a communications network|
|US5704046||May 30, 1996||Dec 30, 1997||Mastercard International Inc.||System and method for conducting cashless transactions|
|US5705798||Dec 16, 1994||Jan 6, 1998||Mastercard International Inc.||System and method for processing a customized financial transaction card|
|US5708780||Jun 7, 1995||Jan 13, 1998||Open Market, Inc.||Internet server access control and monitoring systems|
|US5715314||Oct 24, 1994||Feb 3, 1998||Open Market, Inc.||Network sales system|
|US5724424||Nov 29, 1995||Mar 3, 1998||Open Market, Inc.||Digital active advertising|
|US5796831||May 31, 1995||Aug 18, 1998||Gemplus||Method for conducting a transaction between a chip card and an information system|
|US5825875||Oct 11, 1995||Oct 20, 1998||Cp8 Transac||Process for loading a protected storage zone of an information processing device, and associated device|
|US5923884 *||Aug 30, 1996||Jul 13, 1999||Gemplus S.C.A.||System and method for loading applications onto a smart card|
|US5936219 *||Mar 12, 1996||Aug 10, 1999||Kabushiki Kaisha Toshiba||Electronic payment system using check identifier and issue time for illegal acts detection|
|EP0152024B1||Jan 31, 1985||Jun 5, 1991||Kabushiki Kaisha Toshiba||Portable data storing/processing device|
|EP0157303B1||Mar 21, 1985||Dec 5, 1990||Kabushiki Kaisha Toshiba||Data processing device|
|EP0190733B1||Feb 4, 1986||Apr 22, 1992||Kabushiki Kaisha Toshiba||Data processing system and method and pocket-size hermetically sealed electronic device|
|EP0218176B1||Sep 30, 1986||Nov 13, 1991||Kabushiki Kaisha Toshiba||Portable electronic device|
|EP0261030B1||Sep 15, 1987||May 18, 1994||Fujitsu Limited||System for data field area acquisition in IC card for multiple services|
|EP0275510B1||Dec 18, 1987||Oct 21, 1992||International Business Machines Corporation||Smart card having external programming capability and method of making same|
|EP0292248A3||May 18, 1988||Oct 31, 1990||The General Electric Company, P.L.C.||Data processing system|
|EP0325506A1||Jan 11, 1989||Jul 26, 1989||Sgs-Thomson Microelectronics S.A.||Security system for protecting the programming zones of an IC card|
|EP0328289B2||Jan 31, 1989||Mar 4, 1998||Hitachi Maxell Ltd.||IC card and method of writing its operation program|
|EP0354793B1||Aug 10, 1989||Oct 23, 1996||Hitachi Maxell, Ltd.||IC card and method for rewriting its program|
|EP0451936B1||Feb 12, 1991||Dec 27, 1996||Hitachi Maxell Ltd.||Program control system for portable data storage device|
|EP0466969B1||Jul 20, 1990||Jan 12, 1994||Siemens Nixdorf Informationssysteme Aktiengesellschaft||Method for preventing unauthorised deviations from an application development protocol in a data exchange system|
|EP0475837B1||Sep 10, 1991||Aug 11, 1993||Gemplus Card International||Method of managing an application program stored in an ic card|
|EP0537756B1||Oct 16, 1992||May 31, 2000||Fujitsu Limited||Information distributing system with sub-stations transmitting broadcast information by wireless and terminals receiving the information|
|EP0540095B1||Oct 22, 1992||Jan 7, 1998||Philips Composants Et Semiconducteurs||Microcircuit for an IC-card with protected programmable memory|
|EP0547741A1||Sep 23, 1992||Jun 23, 1993||International Computers Limited||Security mechanism for a computer system|
|EP0559205B1||Mar 5, 1993||May 12, 1999||Kabushiki Kaisha Toshiba||Data processing system|
|EP0588339B1||Sep 16, 1993||Dec 9, 1998||Nippon Telegraph And Telephone Corporation||Method of settling charges by using IC cards|
|EP0594493B1||Oct 18, 1993||Jan 8, 2003||Gemplus S.C.A.||Software acquiring procedure and information system for carrying out this procedure|
|EP0636998B1||Jul 22, 1994||Mar 8, 2000||Oki Electric Industry Co., Ltd.||High-security ic card|
|EP0647902B1||Oct 6, 1994||Jun 9, 1999||International Business Machines Corporation||A data processing system|
|EP0666550B1||Feb 8, 1994||May 2, 1997||Belle Gate Investment B.V.||Data exchange system comprising portable data processing units|
|EP0686947B1||May 31, 1995||Sep 24, 1997||Gemplus||Method for executing a transaction between an IC-card and an information system|
|EP0707290B1||Sep 21, 1995||Jul 16, 2003||CP8 Technologies||Method and apparatus for loading a protected memory zone in data processing equipment|
|EP0751460A3||Jun 7, 1996||May 14, 1997||Sun Microsystems Inc||System and method of controlling mapping of data buffers for heterogenous programs in digital computer system|
|FR2536928B1||Title not available|
|FR2667171B1||Title not available|
|FR2687816B1||Title not available|
|GB2284689B||Title not available|
|JP2592856B2||Title not available|
|1||Davies et al., "Security for Computer Networks: An Introduction to Data Security in Teleprocessing and Electronic Funds Transfer," John Wiley & Sons 1984.|
|Citing Patent||Filing date||Publication date||Applicant||Title|
|US6931381 *||Mar 10, 2000||Aug 16, 2005||American Express Travel Related Services Company, Inc.||Methods and apparatus for authenticating the download of information onto a smart card|
|US7080259 *||Aug 14, 2000||Jul 18, 2006||Matsushita Electric Industrial Co., Ltd.||Electronic information backup system|
|US7246375 *||Jul 8, 1998||Jul 17, 2007||Gemplus||Method for managing a secure terminal|
|US7299366 *||Jun 18, 2003||Nov 20, 2007||Nagra Thomson Licensing||Secure software customization for smartcard|
|US7747538 *||Nov 1, 2005||Jun 29, 2010||Fujitsu Limited||Memory card|
|US7970722||Jun 28, 2011||Aloft Media, Llc||System, method and computer program product for a collaborative decision platform|
|US8005777||Aug 23, 2011||Aloft Media, Llc||System, method and computer program product for a collaborative decision platform|
|US8090663 *||Sep 14, 2006||Jan 3, 2012||Diebold, Incorporated||Automated banking machine system and method|
|US8160988||Jul 27, 2010||Apr 17, 2012||Aloft Media, Llc||System, method and computer program product for a collaborative decision platform|
|US8296575 *||Jun 21, 2002||Oct 23, 2012||Nokia Corporation||Method for protecting electronic device, and electronic device|
|US8607069||Jun 4, 2004||Dec 10, 2013||Sony Corporation||Data processing apparatus, data processing method, terminal unit, and transmission method of data processing apparatus|
|US8645222||Jun 17, 2011||Feb 4, 2014||Jpmorgan Chase Bank, N.A.||System and methods for mobile ordering and payment|
|US9009497 *||Jan 21, 2014||Apr 14, 2015||Marvell International Ltd.||Secure methods for generating content and operating a drive based on identification of a system on chip|
|US9230259||May 10, 2010||Jan 5, 2016||Jpmorgan Chase Bank, N.A.||Systems and methods for mobile ordering and payment|
|US9268621 *||Nov 2, 2011||Feb 23, 2016||Red Hat, Inc.||Reducing latency in multicast traffic reception|
|US20020040349 *||Feb 23, 2001||Apr 4, 2002||Akihisa Takayama||Copyright information inquiring apparatus|
|US20030009680 *||Jun 21, 2002||Jan 9, 2003||Antti Kiiveri||Method for protecting electronic device, and electronic device|
|US20030236989 *||Jun 18, 2003||Dec 25, 2003||Olivier Condemine||Secure software customization for smartcard|
|US20040218214 *||Jun 4, 2004||Nov 4, 2004||Sony Corporation||Data processing apparatus, data processing method, terminal unit, and transmission method of data processing apparatus|
|US20060085333 *||Aug 25, 2004||Apr 20, 2006||Wah Leow O||Credit/debit card payment system|
|US20060116969 *||Nov 1, 2005||Jun 1, 2006||Fujitsu Limited||Memory card|
|US20060130128 *||May 22, 2003||Jun 15, 2006||Emir Gorancic||Process for compiling and executing software applications in a multi-processor environment|
|US20060195886 *||Jul 22, 2004||Aug 31, 2006||Koninklijke Philips Electronics N.V.||Content identification for broadcast media|
|US20080005567 *||Jan 24, 2007||Jan 3, 2008||Stepnexus, Inc.||Method and system for personalizing smart cards using asymmetric key cryptography|
|US20090078757 *||Mar 24, 2006||Mar 26, 2009||Hanson Bradley C||Information management system and method|
|US20110016524 *||Jul 16, 2010||Jan 20, 2011||Assa Abloy Ab||Blind verification of computer firmware|
|US20130110968 *||May 2, 2013||Neil R.T. Horman||Reducing latency in multicast traffic reception|
|EP1376492A1 *||Jun 24, 2002||Jan 2, 2004||Canal + Technologies||Secure software customisation for smartcard|
|WO2006038103A1 *||Oct 6, 2005||Apr 13, 2006||Axalto S.A||System and method for post-issuance code update employing embedded native code.|
|U.S. Classification||235/492, 235/380|
|International Classification||G06K19/073, G07F7/10, G06K17/00, G06F21/22, G07F17/16, G06F9/445, G06F15/78, G06K19/07|
|Cooperative Classification||G06Q20/355, G06Q20/3552, G06K19/0719, G07F7/1008, G06K2017/0041, G06Q20/4097, G07F17/16, G06Q20/40975, G06Q20/35765, G07F7/1016, G06Q20/341|
|European Classification||G06K19/07G, G06Q20/355, G06Q20/35765, G06Q20/4097, G06Q20/341, G06Q20/40975, G06Q20/3552, G07F17/16, G07F7/10E, G07F7/10D|
|Aug 20, 1998||AS||Assignment|
Owner name: MONDEX INTERNATIONAL LIMITED, ENGLAND
Free format text: ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:EVERETT, DAVID BARRINGTON;MILLER, STUART JAMES;PEACHAM, ANTHONY DAVID;REEL/FRAME:009400/0753
Effective date: 19980731
|May 17, 2005||FPAY||Fee payment|
Year of fee payment: 4
|May 13, 2009||FPAY||Fee payment|
Year of fee payment: 8
|Mar 8, 2013||FPAY||Fee payment|
Year of fee payment: 12